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Collaboration of tRNA modifications and elongation factor eEF1A in decoding and nonsense suppression

机译:tRNA修饰和延伸因子eEF1A在解码和无意义抑制中的协作

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Transfer RNA (tRNA) from all domains of life contains multiple modified nucleosides, the functions of which remain incompletely understood. Genetic interactions between tRNA modification genes in Saccharomyces cerevisiae suggest that different tRNA modifications collaborate to maintain translational efficiency. Here we characterize such collaborative functions in the ochre suppressor tRNA SUP4 . We quantified ochre read-through efficiency in mutants lacking either of the 7 known modifications in the extended anticodon stem loop (G26-C48). Absence of U34, U35, A37, U47 and C48 modifications partially impaired SUP4 function. We systematically combined modification defects and scored additive or synergistic negative effects on SUP4 performance. Our data reveal different degrees of functional redundancy between specific modifications, the strongest of which was demonstrated for those occurring at positions U34 and A37. SUP4 activity in the absence of critical modifications, however, can be rescued in a gene dosage dependent fashion by TEF1 which encodes elongation factor eEF1A required for tRNA delivery to the ribosome. Strikingly, the rescue ability of higher-than-normal eEF1A levels extends to tRNA modification defects in natural non-suppressor tRNAs suggesting that elevated eEF1A abundance can partially compensate for functional defects induced by loss of tRNA modifications.
机译:从生活的所有领域转移RNA(tRNA)包含多个修饰的核苷,其功能仍不完全了解。酿酒酵母中tRNA修饰基因之间的遗传相互作用表明,不同的tRNA修饰协同作用以维持翻译效率。在这里,我们表征这种协同作用的抑黄剂tRNA SUP4。我们定量了在扩展的反密码子茎环(G26-C48)中缺少7种已知修饰之一的突变体中的茶色通读效率。缺少U34,U35,A37,U47和C48修饰会部分削弱SUP4的功能。我们系统地结合了修饰缺陷和对SUP4性能的累加或协同负面影响。我们的数据揭示了特定修饰之间不同程度的功能冗余,其中最强的修饰发生在位置U34和A37处。但是,可以通过TEF1以基因剂量依赖性的方式挽救缺少关键修饰的SUP4活性,该因子编码tRNA传递至核糖体所需的延伸因子eEF1A。令人惊讶的是,高于正常水平的eEF1A的抢救能力扩展到了天然非抑制性tRNA中的tRNA修饰缺陷,这表明eEF1A丰度提高可以部分补偿因tRNA修饰缺失引起的功能缺陷。

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